首页> 外文会议>World petroleum congress;WPC 1997 >SONIC/DENSITY WELL LOG DATA EDITING WITH PSEUDO CURVE GENERATION-INDONESIAN EXAMPLES USING A MULTIPLE CROSSPRODUCT NON-LINEAR METHOD
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SONIC/DENSITY WELL LOG DATA EDITING WITH PSEUDO CURVE GENERATION-INDONESIAN EXAMPLES USING A MULTIPLE CROSSPRODUCT NON-LINEAR METHOD

机译:使用伪跨曲线非线性示例使用伪曲线生成-印度尼西亚示例进行声/密度测井数据编辑

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Sonic and density well log data are vital for geophysicists, petrophysicists, engineers and geologists in the search and evaluation of economic oil and gas reserves. In many cases, however, the data are missing or need editing due to environmental effects such as sonic cycle skipping or density rugose hole and washout effects. In the past, most methods relied on manual well log editing or pseudo curve generation using single logs. A new method has been developed that automatically edits sonic and density logs and generates pseudo curves from combinations of other logs. By incorporating the crossproducts of multiple curves as an addition to the conventional linear multiple regression techniques, more accurate non-linear data correlation can be obtained which yield better results.Preliminary applications of this new approach include improved synthetic seismograms, pseudo sonic/density log predictions, replacement of bad or missing well log data, calibration of logs to core data, and better well log quality control. For example, gamma ray, density and neutron data may be calibrated to generate a pseudo sonic curve that can be used in places where the sonic is missing or bad.This method has been tested in Indonesia over the last few years and several examples demonstrate the benefits and advantages of using this approach. Additional future applications such as permeability estimations and production prediction may also be possible.
机译:声波和密度测井数据对于地球物理学家,岩石物理学家,工程师和地质学家在寻找和评估经济油气储量方面至关重要。但是,在许多情况下,由于环境影响(例如音速循环跳过或密度皱纹孔和冲洗效果)而导致数据丢失或需要编辑。过去,大多数方法都依靠手动测井编辑或使用单个测井曲线生成伪曲线。已经开发出一种新方法,该方法可以自动编辑声​​波测井曲线和密度测井曲线,并根据其他测井曲线的组合生成伪曲线。通过将多条曲线的叉积作为常规线性多重回归技术的补充,可以获得更准确的非线性数据相关性,从而产生更好的结果。 这种新方法的初步应用包括改进的合成地震图,伪声波/密度测井预测,替换不良或缺失的测井数据,将测井标定为核心数据以及更好的测井质量控制。例如,可以对伽马射线,密度和中子数据进行校准以生成伪声波曲线,该伪声波曲线可以在缺少声波或声波不好的地方使用。 在过去的几年中,已经在印度尼西亚对这种方法进行了测试,并且有几个示例证明了使用这种方法的好处和优势。诸如渗透率估计和产量预测之类的其他未来应用也是可能的。

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